Department of Pharmacy, Birla Institute of Technology and Science, Pilani 333031, Rajasthan, India.
Department of Cellular and Molecular Biology, Graduate School of Biomedical & Health Sciences, Hiroshima University, Hiroshima 734-8553, Japan.
Mol Pharm. 2022 Jul 4;19(7):1977-1998. doi: 10.1021/acs.molpharmaceut.1c00970. Epub 2022 Apr 28.
Diabetes mellitus is a chronic manifestation characterized by high levels of glucose in the blood resulting in several complications including diabetic wounds and ulcers, which predominantly require a longer duration of treatment and adversely affect the quality of life of the patients. Nanotechnology-based therapeutics (both intrinsic and extrinsic types) have emerged as a promising treatment in diabetic foot ulcer/chronic wounds owing to their unique characteristics and specific functional properties. In this review, we have focused on the significance of the use of lipids in the healing of diabetic ulcers, their interaction with the injured skin, and recent trends in lipid-based nanocarriers for the healing of diabetic wounds. Lipid nanocarriers are also being investigated for gene therapy in diabetic wound healing to encapsulate nucleic acids such as siRNA and miRNA, which could silence the expression of inflammatory cytokines overexpressed in chronic wounds. Additionally, these are also being explored for encapsulating proteins, peptides, growth factors, and other biological genetic material as therapeutic agents. Lipid-based nanocarriers encompassing a wide variety of carriers such as liposomes, niosomes, ethosomes, solid lipid nanoparticles, and lipidoid nanoparticles that are explored for the treatment of foot ulcers supplemented with relevant research studies have been discussed in the present review. Lipid-based nanodrug delivery systems have demonstrated promising wound healing potential, particularly in diabetic conditions due to the enhanced efficacy of the entrapped active molecules.
糖尿病是一种慢性表现,其特征是血液中葡萄糖水平升高,导致多种并发症,包括糖尿病伤口和溃疡,这些并发症主要需要更长的治疗时间,并对患者的生活质量产生不利影响。基于纳米技术的治疗方法(内在和外在类型)因其独特的特性和特定的功能特性,已成为治疗糖尿病足溃疡/慢性伤口的一种有前途的治疗方法。在这篇综述中,我们重点关注了脂质在糖尿病溃疡愈合中的重要性,它们与受损皮肤的相互作用,以及最近用于治疗糖尿病伤口的基于脂质的纳米载体的趋势。脂质纳米载体也被用于糖尿病伤口愈合的基因治疗,以封装核酸,如 siRNA 和 miRNA,这些核酸可以沉默慢性伤口中过度表达的炎症细胞因子的表达。此外,还探索了这些载体用于封装蛋白质、肽、生长因子和其他生物遗传物质作为治疗剂。本综述讨论了广泛的载体,如脂质体、非诺体、醇质体、固体脂质纳米粒和脂质纳米粒,这些载体都被探索用于治疗溃疡,并结合了相关的研究。基于脂质的纳米药物传递系统由于包封的活性分子的增强功效,在糖尿病情况下表现出有希望的伤口愈合潜力。